Enrichment and separation of isotopes utilizing a novel magnetic isotope effect. Final report
C.‐J. CHUNG, N. J. TURRO, W. Ruderman
Abstract
C.‐J. CHUNG, N. J. TURRO, W. Ruderman
Abstract
Results are presented of a study undertaken to find a suitable isotope separation process for the /sup 13/C-/sup 12/C system that could be adapted to a multi-stage process for the commercial enrichment and separation of isotopes. Experiments reveal that solid porous silica provides an appropriate medium for the efficient enrichment of /sup 13/C via the photolysis of dibenzyl ketones (and related ketones). It is concluded that a system can be designed for the practical separation of /sup 13/C from /sup 12/C based on the photolysis in a magnetic field of ketones absorbed on solid porous silica.
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Results are presented of a study undertaken to find a suitable isotope separation process for the /sup 13/C-/sup 12/C system that could be adapted to a multi-stage process for the commercial enrichment and separation of isotopes. Experiments reveal that solid porous silica provides an appropriate medium for the efficient enrichment of /sup 13/C via the photolysis of dibenzyl ketones (and related ketones). It is concluded that a system can be designed for the practical separation of /sup 13/C from /sup 12/C based on the photolysis in a magnetic field of ketones absorbed on solid porous silica.
Key concepts: Isotope separation, Isotope, Photodissociation, Separation process, Chemistry, Stable isotope ratio, Magnetic separation, Porosity